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Molecular Cell|June 27, 2018
The Initial Response of a Eukaryotic Replisome to DNA DamageMartin R G Taylor, Joseph T P YeelesJournal of Molecular Biology|March 22, 2019
Dynamics of Replication Fork Progression Following Helicase-Polymerase Uncoupling in EukaryotesMartin R G Taylor, Joseph T P YeelesNature|May 18, 2022
Fast and efficient DNA replication with purified human proteinsYasemin Baris, Martin R G Taylor, Valentina Aria, et al.The EMBO Journal|October 25, 2021
Structure of a human replisome shows the organisation and interactions of a DNA replication machineMorgan L Jones, Yasemin Baris, Martin R G Taylor, et al.Biochemical Society Transactions|January 24, 2014
Discontinuous leading-strand synthesis: a stop-start storyJoseph T P YeelesMolecular Cell|November 20, 2018
Mechanism of Bidirectional Leading-Strand Synthesis Establishment at Eukaryotic DNA Replication OriginsValentina Aria, Joseph T P YeelesNature Structural & Molecular Biology|April 29, 2020
Reconstitution of translesion synthesis reveals a mechanism of eukaryotic DNA replication restartThomas A Guilliam, Joseph T P YeelesNature Structural & Molecular Biology|August 7, 2024
Structural basis for processive daughter-strand synthesis and proofreading by the human leading-strand DNA polymerase Pol εJohann J Roske, Joseph T P YeelesCritical Reviews in Biochemistry and Molecular Biology|September 5, 2020
An updated perspective on the polymerase division of labor during eukaryotic DNA replicationThomas A Guilliam, Joseph T P YeelesJournal of Molecular Biology|June 16, 2007
A dual-nuclease mechanism for DNA break processing by AddAB-type helicase-nucleasesJoseph T P Yeeles, Mark S DillinghamPageof 4